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In vivo biofluid dynamic imaging in the developing zebrafish.

机译:发展中国家斑马鱼体内生物流体动态成像。

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摘要

Flow-structure interactions are ubiquitous in nature, and are important factors in the proper development of form and function in living organisms. In order to uncover the mechanisms by which flow-structure interactions affect vertebrate development, we first need to establish the techniques necessary to quantitatively describe the fluid flow environment within the embryo. To do this, we must bring dynamic, in vivo imaging methods to bear on living systems. Traditional avian and mammalian model systems can be problematic in this regard. The zebrafish (Danio rerio) is widely accepted as an excellent model organism for the study of vertebrate biology, as it shows substantial anatomical and genetic conservation with higher vertebrates, including humans. Their small size, optical transparency, and external development make zebrafish the ideal model system for dynamic imaging. This article reviews the current state of research in imaging biofluid flow within and around developing zebrafish embryos, with an emphasis on dynamic imaging modalities. Birth Defects Research (Part C) 72:277-289, 2004. (c) 2004 Wiley-Liss, Inc.
机译:流动-结构相互作用本质上是普遍存在的,并且是活生物体形式和功能正常发育的重要因素。为了揭示流动结构相互作用影响脊椎动物发育的机制,我们首先需要建立定量描述胚胎内流体流动环境所必需的技术。为此,我们必须将动态的体内成像方法应用于生命系统。在这方面,传统的鸟类和哺乳动物模型系统可能会出现问题。斑马鱼(Danio rerio)被广泛认为是研究脊椎动物生物学的优良模式生物,因为它显示出包括人类在内的高级脊椎动物的大量解剖学和遗传学保护。它们的小尺寸,光学透明性和外部显影特性使斑马鱼成为动态成像的理想模型系统。本文回顾了发展中的斑马鱼胚胎内及其周围生物流体流动成像的研究现状,重点是动态成像方法。出生缺陷研究(C部分)72:277-289,2004.(c)2004 Wiley-Liss,Inc.

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